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使用X射线计算机断层扫描技术对苹果组织进行三维孔隙空间定量分析。

Three-dimensional pore space quantification of apple tissue using X-ray computed microtomography.

作者信息

Mendoza Fernando, Verboven Pieter, Mebatsion Hibru K, Kerckhofs Greet, Wevers Martine, Nicolaï Bart

机构信息

BIOSYST, MeBioS, Faculty of Bioscience Engineering, Katholieke Universiteit Leuven, W. de Croylaan 42, 3001 Leuven, Belgium.

出版信息

Planta. 2007 Aug;226(3):559-70. doi: 10.1007/s00425-007-0504-4. Epub 2007 Mar 15.

Abstract

The microstructure and the connectivity of the pore space are important variables for better understanding of the complex gas transport phenomena that occur in plant tissues. In this study, we present an experimental procedure for image acquisition and image processing to quantitatively characterize in 3D the pore space of apple tissues (Malus domestica Borkh.) for two cultivars (Jonagold and Braeburn) taken from the fleshy part of the cortex using X-ray computer microtomography. Preliminary sensitivity analyses were performed to determine the effect of the resolution and the volume size (REV, representative elementary volume analysis) on the computed porosity of apple samples. For comparison among cultivars, geometrical properties such as porosity, specific surface area, number of disconnected pore volumes and their distribution parameters were extracted and analyzed in triplicate based on the 3D skeletonization of the pore space (medial axis analysis). The results showed that microtomography provides a resolution at the micrometer level to quantitatively analyze and characterize the 3D topology of the pore space in apple tissue. The computed porosity was confirmed to be highly dependent of the resolution used, and the minimum REV of the cortical flesh of apple fruit was estimated to be 1.3 mm(3). Comparisons among the two cultivars using a resolution of 8.5 mum with a minimum REV cube showed that in spite of the complexity and variability of the pore space network observed in Jonagold and Braeburn apples, the extracted parameters from the medial axis were significantly different (P-value < 0.05). Medial axis parameters showed potential to differentiate the microstructure between the two evaluated apple cultivars.

摘要

孔隙空间的微观结构和连通性是更好地理解植物组织中发生的复杂气体传输现象的重要变量。在本研究中,我们提出了一种图像采集和图像处理的实验程序,以使用X射线计算机显微断层扫描技术对取自两个苹果品种(乔纳金和澳洲青苹)皮层肉质部分的苹果组织(苹果属苹果)的孔隙空间进行三维定量表征。进行了初步敏感性分析,以确定分辨率和体积大小(代表性单元体积分析,REV)对苹果样品计算孔隙率的影响。为了在品种间进行比较,基于孔隙空间的三维骨架化(中轴线分析),提取并重复分析了孔隙率、比表面积、不连通孔隙体积数量及其分布参数等几何特性。结果表明,显微断层扫描技术提供了微米级别的分辨率,以定量分析和表征苹果组织中孔隙空间的三维拓扑结构。计算得到的孔隙率被证实高度依赖于所使用的分辨率,苹果果实皮层果肉的最小REV估计为1.3立方毫米。使用8.5微米分辨率和最小REV立方体对两个品种进行比较表明,尽管在乔纳金和澳洲青苹苹果中观察到的孔隙空间网络复杂且多变,但从中轴线提取的参数存在显著差异(P值<0.05)。中轴线参数显示出区分两个评估苹果品种微观结构的潜力。

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